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透析和完整软体动物神经元中钙电流的酶促调节

Enzymatic regulation of calcium current in dialyzed and intact molluscan neurons.

作者信息

Eckert R, Chad J E, Kalman D

出版信息

J Physiol (Paris). 1986;81(4):318-24.

PMID:2437295
Abstract

Isolated neurons of Helix aspersa were dialyzed and voltage clamped under conditions that isolate the Ca current. The rapid time-dependent run-down, or washout, of Ca current could be slowed by addition of 1 mM EGTA to the dialysis solution. A more effective means of slowing washout was the use of agents that promote protein phosphorylation, such as cAMP, Mg-ATP and the catalytic subunit (CS) of cAMP-dependent protein kinase, along with leupeptin, a tripeptide inhibitor of proteases. In the presence of these agents, no internal EGTA was required to prevent Ca current washout. Thus, during dialysis with 100 microM leupeptin, 7 mM Mg-ATP and 20 micrograms/ml CS, the Ca current remained stable for up to several hours. The rate of Ca-dependent inactivation of the current that occurs during a depolarizing step showed only a small decline during prolonged dialysis. Under these conditions, introduction of 10 microM calmodulin plus 40 micrograms/ml calcineurin, a Ca-calmodulin-dependent phosphatase, caused a significant increase in the rate of Ca current inactivation during a depolarizing step. This increase in rate of inactivation, as well as the original inactivation, was eliminated by introduction of EGTA or replacement of external Ca with Ba, results that are consistent with the ion dependency for activation of calcineurin. When internal ATP was replaced with ATP-gamma-S, a hydrolysis-resistant analogue, the rate of Ca current inactivation slowed, providing further evidence that inactivation involves a dephosphorylation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在分离钙电流的条件下,对非洲大蜗牛的离体神经元进行透析和电压钳制。向透析液中添加1 mM乙二醇双乙醚二胺四乙酸(EGTA)可减缓钙电流快速的时间依赖性衰减或洗脱。减缓洗脱的一种更有效方法是使用促进蛋白质磷酸化的试剂,如环磷酸腺苷(cAMP)、镁-三磷酸腺苷(Mg-ATP)和cAMP依赖性蛋白激酶的催化亚基(CS),以及亮抑蛋白酶肽(一种蛋白酶的三肽抑制剂)。在这些试剂存在的情况下,无需内部EGTA来防止钙电流洗脱。因此,在用100 microM亮抑蛋白酶肽、7 mM Mg-ATP和20微克/毫升CS进行透析期间,钙电流可稳定长达数小时。在去极化步骤中发生的电流的钙依赖性失活速率在长时间透析期间仅略有下降。在这些条件下,引入10 microM钙调蛋白加40微克/毫升钙调磷酸酶(一种钙-钙调蛋白依赖性磷酸酶)会导致去极化步骤中钙电流失活速率显著增加。通过引入EGTA或用钡替代外部钙,这种失活速率的增加以及原始失活均被消除,这些结果与钙调磷酸酶激活的离子依赖性一致。当内部ATP被ATP-γ-S(一种抗水解类似物)替代时,钙电流失活速率减慢,这进一步证明失活涉及去磷酸化。(摘要截短于250字)

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